Weyl semimetals are often considered the 3D-analogon of graphene or topological insulators. The evaluation of quantum oscillations in these systems remains challenging because there are often multiple conduction bands. We observe de Haas-van Alphen oscillations with several frequencies in a single crystal of the Weyl semimetal niobium phosphide. For each fundamental crystal axis, we can fit the raw data to a superposition of sinusoidal functions, which enables us to calculate the characteristic parameters of all individual bulk conduction bands using Fourier transform with an analysis of the temperature and magnetic field-dependent oscillation amplitude decay. Our experimental results indicate that the band structure consists of Dirac bands...
The current-voltage characteristics of a new range of devices built around Weyl semimetals has been ...
By means of first-principle calculations, we report a stoichiometric crystal structure of BiSb with ...
The concept of the geometric Berry phase of the quantum mechanical wave function has led to a better...
Weyl semimetals are often considered the 3D-analogon of graphene or topological insulators. The eval...
[[abstract]]Three types of fermions play a fundamental role in our understanding of nature: Dirac, M...
We report on the pressure evolution of the Fermi surface topology of the Weyl semimetal NbP, probed ...
The Weyl semimetal NbP exhibits a very small Fermi surface consisting of two electron and two hole p...
Quantum oscillation is an important phenomenon in low temperature transport studies of topological m...
The noncentrosymmetric transition-metal monopnictides NbP, TaP, NbAs, and TaAs are a family of Weyl ...
Since their experimental discovery in 2015, Weyl semimetals have generated a large amount of attenti...
We present a high magnetic field study of NbP—a member of the monopnictide Weyl semimetal (WSM) fami...
Weyl semimetal (WSM) is a newly discovered quantum phase of matter that exhibits topologically prote...
\qquad Topology is a branch of mathematics that describes the connectedness of closed surfaces. In c...
We investigate electronic and optical properties of the topological Weyl semimetals TaAs, TaP, NbAs ...
Based on first-principle calculations, we show that a family of nonmagnetic materials including TaAs...
The current-voltage characteristics of a new range of devices built around Weyl semimetals has been ...
By means of first-principle calculations, we report a stoichiometric crystal structure of BiSb with ...
The concept of the geometric Berry phase of the quantum mechanical wave function has led to a better...
Weyl semimetals are often considered the 3D-analogon of graphene or topological insulators. The eval...
[[abstract]]Three types of fermions play a fundamental role in our understanding of nature: Dirac, M...
We report on the pressure evolution of the Fermi surface topology of the Weyl semimetal NbP, probed ...
The Weyl semimetal NbP exhibits a very small Fermi surface consisting of two electron and two hole p...
Quantum oscillation is an important phenomenon in low temperature transport studies of topological m...
The noncentrosymmetric transition-metal monopnictides NbP, TaP, NbAs, and TaAs are a family of Weyl ...
Since their experimental discovery in 2015, Weyl semimetals have generated a large amount of attenti...
We present a high magnetic field study of NbP—a member of the monopnictide Weyl semimetal (WSM) fami...
Weyl semimetal (WSM) is a newly discovered quantum phase of matter that exhibits topologically prote...
\qquad Topology is a branch of mathematics that describes the connectedness of closed surfaces. In c...
We investigate electronic and optical properties of the topological Weyl semimetals TaAs, TaP, NbAs ...
Based on first-principle calculations, we show that a family of nonmagnetic materials including TaAs...
The current-voltage characteristics of a new range of devices built around Weyl semimetals has been ...
By means of first-principle calculations, we report a stoichiometric crystal structure of BiSb with ...
The concept of the geometric Berry phase of the quantum mechanical wave function has led to a better...